Related Experiment Video
Updated: Aug 26, 2026

Microinjection of Interleukin-6 into the Bloodstream of TSC Zebrafish Larvae to Study Neuropsychiatric Disorder-Like Behaviors
Published on: June 26, 2026
Safety Signals Enable Single-Session Active Avoidance Paradigm and Expose Threat Generalization in Tuberous Sclerosis
Andrew Gallagher1,2, Amber Victoria Wilson2,3, Saheed Lawal1,2
1Graduate Program in Neuroscience, Stony Brook University, Stony Brook, New York 11794.
Abstract:
Animals must flexibly discriminate between threat and nonthreat to deploy adaptive defensive strategies. We introduce a single-session differential signaled active avoidance paradigm that temporally dissociates acquisition, consolidation, and retrieval of instrumental avoidance memory. Interleaving a behaviorally noncontingent neutral cue (CS-) with a threat-predictive, behaviorally contingent cue (CS+) enhanced long-term memory without altering acquisition, demonstrating that differential contingency structure selectively reinforces memory consolidation rather than influencing learning performance. Naive mice of either sex inferred contingencies within a single session, and discrimination achieved during training predicted retrieval precision. However, discrimination operated within defined boundary conditions: Extended training or elevated threat intensity destabilized cue specificity and promoted persistent avoidance generalization. Under high-threat conditions, freezing and shuttling coemerged as complementary defensive responses, indicating a shift from precise cue-based encoding to a generalized defensive state. Remote retrieval recruited oxytocin receptor-expressing cells in the medial prefrontal cortex and activated mTORC1-dependent translational signaling, implicating protein synthesis in maintenance of discriminative avoidance memory. In a tuberous sclerosis complex mouse model with Tsc2 haploinsufficiency in oxytocin-responsive cells, males displayed intact acquisition but generalized avoidance at both recent and remote time points, a deficit not rescued by additional training. These findings identify oxytocin-modulated translational control as a molecular gate stabilizing threat-safety discrimination and show that disruption of this axis-by excessive threat or reduced Tsc2 gene dosage-biases memory toward pathological generalization, providing a mechanistic framework for safety-learning deficits in neurodevelopmental and anxiety-related disorders.

